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Show that the rate of change of magnetic...

Show that the rate of change of magnetic flux has the same units as induced e.m.f.

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During the change of magnetic flux when will current be induced?

The magnitude of induced emf produced depends on the rate of change of magnetic flux through the coil. is this statement true.

If (dPhi_B)/(dt) represent the rate of change of magnetic flux in a single turn coil then what will be the induced emf in a coil containing 'N' turns ?

Faraday's second law of EMI says that the magnitude of e.m.f. induced in a cuicuit is directly proportional to the rate of change of magnetic flux linked with circuit, i.e., e prop (d phi)/(dt) . It means if the magnetic flux linked with a circuit changes at a faster rate, the induced e.m.f. is larger and vice-versa. Read the above passage and answer the following question : (i) Coil A is held in a very strong magnetic field and coil B is held in a weak magnetic field. In which coil do you expect larger induced e.m.f. ? (ii) A coil is moved in a uniform magnetic field. When do you expect induced e.m.f. in the coil ? (iii) What values of life do you learn from Faraday's second law of EMI ?

The rate of change of magnetic flux linked with the coil is equal to the magnitude of induced e.m.f.' this is the statement of